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Microtubules and Their Role in Cellular Stress in Cancer

Frontiers in Oncology · 2014 · Vol. 4 · pp. 153–153
Amelia L. ParkerMaria KavallarisJoshua A. McCarroll

Abstract

Microtubules are highly dynamic structures, which consist of α- and β-tubulin heterodimers, and are involved in cell movement, intracellular trafficking, and mitosis. In the context of cancer, the tubulin family of proteins is recognized as the target of the tubulin-binding chemotherapeutics, which suppress the dynamics of the mitotic spindle to cause mitotic arrest and cell death. Importantly, changes in microtubule stability and the expression of different tubulin isotypes as well as altered post-translational modifications have been reported for a range of cancers. These changes have been correlated with poor prognosis and chemotherapy resistance in solid and hematological cancers. However, the mechanisms underlying these observations have remained poorly understood. Emerging evidence suggests that tubulins and microtubule-associated proteins may play a role in a range of cellular stress responses, thus conferring survival advantage to cancer cells. This review will focus on the importance of the microtubule-protein network in regulating critical cellular processes in response to stress. Understanding the role of microtubules in this context may offer novel therapeutic approaches for the treatment of cancer.

Microtubule and mitosis dynamicsEndoplasmic Reticulum Stress and DiseaseMitochondrial Function and PathologyMicrotubuleCancerStress (linguistics)MedicineBiologyNeuroscienceCell biologyInternal medicine

Funding

  • Cancer Institute NSW
  • University of New South Wales
  • Medical Research Council
  • National Health and Medical Research Council
  • Cancer Council NSW
Citations
462
FWCI
11.70
field-weighted impact
References
269
Percentile
99%
vs. same field & year
Citations per year
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References
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Oncogene · 2007 · 2,984 citations
Diverse molecular functions of Hu proteins
Cellular and Molecular Life Sciences · 2008 · 590 citations
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